Topology optimization design for buckling analysis related to the size effect
From MaRDI portal
Publication:5041618
DOI10.1177/10812865211066607OpenAlexW4200053120MaRDI QIDQ5041618
Publication date: 14 October 2022
Published in: Mathematics and Mechanics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1177/10812865211066607
Cites Work
- Unnamed Item
- Topology optimization of couple-stress material structures
- On projection methods, convergence and robust formulations in topology optimization
- A microstructure-dependent Timoshenko beam model based on a modified couple stress theory
- Effective couple-stress continuum model of cellular solids and size effects analysis
- The effect of couple stresses on the tip of a crack
- Experiments and theory in strain gradient elasticity.
- Strain gradient elasticity and modified couple stress models for buckling analysis of axially loaded micro-scaled beams
- Geometrically nonlinear micro-plate formulation based on the modified couple stress theory
- Couple stress based strain gradient theory for elasticity
- Mechanism-based strain gradient plasticity. I: Theory
- Fracture analysis of cellular materials: a strain gradient model.
- Buckling strength topology optimization of 2D periodic materials based on linearized bifurcation analysis
- Multi-material topology optimization for thermal buckling criteria
- Topology optimization of functionally-graded lattice structures with buckling constraints
- Minimum compliance topology optimization of shell-infill composites for additive manufacturing
- Topology optimization for concurrent design of structures with multi-patch microstructures by level sets
- Effects of couple-stresses in linear elasticity
- Level-set topology optimization with many linear buckling constraints using an efficient and robust eigensolver
- The method of moving asymptotes—a new method for structural optimization
- Microcontinuum Field Theories
- Scale‐related topology optimization of cellular materials and structures
This page was built for publication: Topology optimization design for buckling analysis related to the size effect